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Frontiers | Endogenous CRISPR-Cas System-Based Genome Editing and  Antimicrobials: Review and Prospects | Microbiology
Frontiers | Endogenous CRISPR-Cas System-Based Genome Editing and Antimicrobials: Review and Prospects | Microbiology

Antiviral Goes Viral: Harnessing CRISPR/Cas9 to Combat Viruses in Humans:  Trends in Microbiology
Antiviral Goes Viral: Harnessing CRISPR/Cas9 to Combat Viruses in Humans: Trends in Microbiology

CRISPR-based genomic tools for the manipulation of genetically intractable  microorganisms | Nature Reviews Microbiology
CRISPR-based genomic tools for the manipulation of genetically intractable microorganisms | Nature Reviews Microbiology

Evolutionary classification of CRISPR–Cas systems: a burst of class 2 and  derived variants | Nature Reviews Microbiology
Evolutionary classification of CRISPR–Cas systems: a burst of class 2 and derived variants | Nature Reviews Microbiology

Editing the microbiome the CRISPR way | Philosophical Transactions of the  Royal Society B: Biological Sciences
Editing the microbiome the CRISPR way | Philosophical Transactions of the Royal Society B: Biological Sciences

The next generation of CRISPR–Cas technologies and applications | Nature  Reviews Molecular Cell Biology
The next generation of CRISPR–Cas technologies and applications | Nature Reviews Molecular Cell Biology

Frontiers | Recent Advances of CRISPR/Cas9-Based Genetic Engineering and  Transcriptional Regulation in Industrial Biology | Bioengineering and  Biotechnology
Frontiers | Recent Advances of CRISPR/Cas9-Based Genetic Engineering and Transcriptional Regulation in Industrial Biology | Bioengineering and Biotechnology

Anti-CRISPR protein applications: natural brakes for CRISPR-Cas  technologies | Nature Methods
Anti-CRISPR protein applications: natural brakes for CRISPR-Cas technologies | Nature Methods

Genome-wide CRISPR-Cas9 knockout screens - Wikipedia
Genome-wide CRISPR-Cas9 knockout screens - Wikipedia

A Tale of Two Moieties: Rapidly Evolving CRISPR/Cas-Based Genome Editing:  Trends in Biochemical Sciences
A Tale of Two Moieties: Rapidly Evolving CRISPR/Cas-Based Genome Editing: Trends in Biochemical Sciences

Molecular mechanisms of CRISPR–Cas spacer acquisition | Nature Reviews  Microbiology
Molecular mechanisms of CRISPR–Cas spacer acquisition | Nature Reviews Microbiology

History of CRISPR-Cas from Encounter with a Mysterious Repeated Sequence to Genome  Editing Technology | Journal of Bacteriology
History of CRISPR-Cas from Encounter with a Mysterious Repeated Sequence to Genome Editing Technology | Journal of Bacteriology

Nature Reviews Microbiology on Twitter: "Molecular mechanisms of CRISPR–Cas  spacer acquisition https://t.co/kBvwCJ04S4 In this Progress article, McGinn  and Marraffini review recent studies that have advanced our understanding  of the mechanisms of spacer
Nature Reviews Microbiology on Twitter: "Molecular mechanisms of CRISPR–Cas spacer acquisition https://t.co/kBvwCJ04S4 In this Progress article, McGinn and Marraffini review recent studies that have advanced our understanding of the mechanisms of spacer

History of CRISPR-Cas from Encounter with a Mysterious Repeated Sequence to Genome  Editing Technology | Journal of Bacteriology
History of CRISPR-Cas from Encounter with a Mysterious Repeated Sequence to Genome Editing Technology | Journal of Bacteriology

The Biology of CRISPR-Cas: Backward and Forward - ScienceDirect
The Biology of CRISPR-Cas: Backward and Forward - ScienceDirect

CRISPR-cas gene-editing as plausible treatment of neuromuscular and  nucleotide-repeat-expansion diseases: A systematic review
CRISPR-cas gene-editing as plausible treatment of neuromuscular and nucleotide-repeat-expansion diseases: A systematic review

The new frontier of genome engineering with CRISPR-Cas9 | Science
The new frontier of genome engineering with CRISPR-Cas9 | Science

Evolutionary classification of CRISPR–Cas systems: a burst of class 2 and  derived variants | Nature Reviews Microbiology
Evolutionary classification of CRISPR–Cas systems: a burst of class 2 and derived variants | Nature Reviews Microbiology

CRISPR‐Cas systems in oral microbiome: From immune defense to physiological  regulation - Gong - 2020 - Molecular Oral Microbiology - Wiley Online  Library
CRISPR‐Cas systems in oral microbiome: From immune defense to physiological regulation - Gong - 2020 - Molecular Oral Microbiology - Wiley Online Library

Biology and Applications of CRISPR Systems: Harnessing Nature's Toolbox for  Genome Engineering - ScienceDirect
Biology and Applications of CRISPR Systems: Harnessing Nature's Toolbox for Genome Engineering - ScienceDirect

A simple and efficient cloning system for CRISPR/Cas9-mediated genome  editing in rice [PeerJ]
A simple and efficient cloning system for CRISPR/Cas9-mediated genome editing in rice [PeerJ]

CRISPR-Cas9 and CRISPR-Assisted Cytidine Deaminase Enable Precise and  Efficient Genome Editing in Klebsiella pneumoniae | Applied and  Environmental Microbiology
CRISPR-Cas9 and CRISPR-Assisted Cytidine Deaminase Enable Precise and Efficient Genome Editing in Klebsiella pneumoniae | Applied and Environmental Microbiology

CRISPR-Based Technologies for Metabolic Engineering in Cyanobacteria:  Trends in Biotechnology
CRISPR-Based Technologies for Metabolic Engineering in Cyanobacteria: Trends in Biotechnology

Beyond editing: repurposing CRISPR–Cas9 for precision genome regulation and  interrogation | Nature Reviews Molecular Cell Biology
Beyond editing: repurposing CRISPR–Cas9 for precision genome regulation and interrogation | Nature Reviews Molecular Cell Biology

PDF) Advancing metabolic engineering of Yarrowia lipolytica using the CRISPR /Cas system
PDF) Advancing metabolic engineering of Yarrowia lipolytica using the CRISPR /Cas system

Bacterial alginate regulators and phage homologs repress CRISPR-Cas  immunity.,Nature Microbiology - X-MOL
Bacterial alginate regulators and phage homologs repress CRISPR-Cas immunity.,Nature Microbiology - X-MOL

Development of CRISPR-Cas systems for genome editing and beyond | Quarterly  Reviews of Biophysics | Cambridge Core
Development of CRISPR-Cas systems for genome editing and beyond | Quarterly Reviews of Biophysics | Cambridge Core